劉金平,男,1981年12月出生,2004年及2009年分別獲華中師範大學學士及博士學位,2008年6月-2008年12月在新加坡南洋理工大學任研究助理(Research Assistant),2010年–2011年期間在南洋理工大學做博士後(Senior Research Fellow)研究工作。2009年-2014年先後在華中師範大學任講師、副教授。
(1) R. Z. Li, J. P. Liu*, et al. Carbon-Stabilized High-Capacity Ferroferric Oxide Nanorod Array for Flexible Solid-State Alkaline Battery-Supercapacitor Hybrid Device with High Environmental Suitability, Advanced Functional Materials, 2015, 25, 5384-5394.(VIP paper;MaterialsViews 報導: 高性能柔性固態“鹼性電池-超級電容器”混合儲能器件)
(2)C.Wang, J. P. Liu*, et al. Fabrication and Shell Optimization of Synergistic TiO2-MoO3 Core-Shell Nanowire Array Anode for High Energy and Power Density Lithium-Ion Batteries, Advanced Functional Materials, 2015, 25, 3524–3533. (VIP paper)
(3) W. H. Zuo, C. Wang, Y. Y. Li and J. P. Liu*, Directly Grown Nanostructured Electrodes for High Volumetric Energy Density Binder-Free Hybrid Supercapacitors: A Case Study of CNTs//Li4Ti5O12, Scientific Reports, 2015, 5, 7780.
(4) C. Zhou, J. P. Liu*, et al., Construction of High-Capacitance 3D CoO@Polypyrrole Nanowire Array Electrode for Aqueous Asymmetric Supercapacitor, Nano Letters, 2013, 13, 2078.
(5) J. Jiang, Y. Y. Li, J. P. Liu*, et al., Recent Advances in Metal Oxide-based Electrode Architecture Design for Electrochemical Energy Storage. Advanced Materials, 2012, 24, 5166.(綜述論文)
(6) J. P. Liu, et al., Co3O4 Nanowire@MnO2 Ultrathin Nanosheet Core/Shell Arrays: A New Class of High-Performance Pseudocapacitive Materials, Advanced Materials, 2011, 23, 2076–2081. (Selected as "Frontispiece Feature Paper"; Highlighted by "Nature Asia Materials" and "Nanowerk").
(7) J. Jiang, J. P. Liu*, W. W. Zhou, J. H. Zhu,X. T. Huang, X. Y. Qi, H. Zhang, Ting Yu*,CNTs/Ni Hybrid Nanostructured Arrays: Synthesis and Application as High-Performance Electrode Materials for Pseudocapacitor, Energy & Environmental Science, 2011, 4, 5000-5007.
(8) J. P. Liu,et al., Layered Double Hydroxide Nano- and Microstructures Grown Directly on Metal Substrates and Their Calcined Products for Application as Li-Ion Battery Electrodes, Advanced Functional Materials, 2008, 18, 1448-1458.(Featured in the Font Cover) .
(9) J. Jiang, Y. Y. Li, J. P. Liu*, X.T. Huang, Building One-Dimensional Oxide Nanostructure Arrays on Conductive Metal Substrates for Lithium-Ion Battery Anodes, Nanoscale, 2011, 3, 45-58. (邀請綜述)
(10) J. P. Liu, et al. Iron Oxide-Based Nanotube Arrays Derived from Sacrificial Template-Accelerated Hydrolysis: Large-Area Design and Reversible Lithium Storage,Chemistry Materials, 2010, 22, 212.
(11) J. P. Liu, et al. Direct Growth of SnO2 Nanorod Array Electrode for Lithium-ion Batteries, Journal of Materials Chemistry, 2009, 19, 1859-1864.
(12) C. Guan,J. P. Liu, et al. Hybrid Structure of Cobalt Monoxide Nanowire@Nickel Hydroxidenitrate Nanoflake Aligned on Nickel Foam for High-Rate Supercapacitor, Energy & Environmental Science, 2011, 4, 4496-4499.
(6) A Hybrid Nanostructure, A Method For Forming The Hybrid Nanostructure, And An Electrode Including A Plurality Of The Hybrid Nanostructures, filed on 2012.11, US20130115453 A1